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HIV Vaccine Design to Target Germline Precursors of Glycan-Dependent Broadly Neutralizing Antibodies

机译:针对针对葡萄糖依赖的广泛中和抗体的种系前体的HIV疫苗设计

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摘要

Broadly neutralizing antibodies (bnAbs) against the N332 supersite of the HIV envelope (Env) trimer are the most common bnAbs induced during infection, making them promising leads for vaccine design. Wild-type Env glycoproteins lack detectable affinity for supersite-bnAb germline precursors and are therefore unsuitable immunogens to prime supersite-bnAb responses. We employed mammalian cell surface display to design stabilized Env trimers with affinity for germline-reverted precursors of PGT121-class supersite bnAbs. The trimers maintained native-like antigenicity and structure, activated PGT121 inferred-germline B cells ex vivo when multimerized on liposomes, and primed PGT121-like responses in PGT121 inferred-germline knockin mice. Design intermediates have levels of epitope modification between wild-type and germline-targeting trimers; their mutation gradient suggests sequential immunization to induce bnAbs, in which the germline- targeting prime is followed by progressively less-mutated design intermediates and, lastly, with native trimers. The vaccine design strategies described could be utilized to target other epitopes on HIV or other pathogens.
机译:针对HIV包膜(Env)三聚体的N332超级位点的广泛中和抗体(bnAb)是在感染过程中诱导的最常见bnAb,使其成为疫苗设计的有希望的线索。野生型Env糖蛋白缺乏对超站点bnAb种系前体的可检测亲和力,因此不适用于引发超站点bnAb反应的免疫原。我们利用哺乳动物细胞表面展示来设计稳定的Env三聚体,其对PGT121类超级位点bnAb的种系还原前体具有亲和力。三聚体保持天然样的抗原性和结构,在脂质体上多聚体时离体激活PGT121推断的胚系B细胞,并在PGT121推断的胚系敲除小鼠中引发PGT121样应答。设计中间体在野生型和靶向种系的三聚体之间具有表位修饰水平;他们的突变梯度表明,要进行连续免疫以诱导bnAb,其中针对种系的启动子后面是逐渐减少突变的设计中间体,最后是天然三聚体。所描述的疫苗设计策略可用于靶向HIV或其他病原体上的其他表位。

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